前庭功能减退与额叶皮质表面形状改变有关

IF 3.5 2区 医学 Q1 NEUROIMAGING
Dominic Padova, J. Tilak Ratnanather, Andreia V. Faria, Yuri Agrawal
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引用次数: 0

摘要

与衰老相关的外周前庭功能下降与行为和认知能力的缺陷有关,这些缺陷已知依赖于感觉运动皮层和额叶皮层,但确切的神经通路尚不清楚。为了填补这一知识空白,本横断面研究调查了前庭功能的年龄相关变化与额叶和感觉运动皮层表面形状改变之间的关系,考虑了年龄、颅内容量和性别。来自巴尔的摩老龄化纵向研究的117名老年人(60岁以上)的数据进行了分析,这些老年人在同一次就诊中接受了终末器官特异性前厅测试(球囊cemp,小囊oVEMP,水平管vHIT)和t1加权MRI扫描。我们研究了广泛分布的前庭网络中10个额叶和感觉运动脑结构的子集:前额叶皮层中上部(SFG_PFC)、额极(SFG_pole)、额上回后部(SFG)、前额叶背部和额中回后部(MFG_DPFC, MFG)、额下回的小包部、三角部和眶部,以及感觉运动皮层的中央前回和中央后回(PoCG)。对于每个感兴趣区域(ROI),形状描述符被估计为使用大变形差分对称度量映射(LDDMM)表面配准的总体平均ROI表面的局部压缩和扩展。形状描述符线性回归到标准化的前庭变量,年龄,颅内容量,性别,以及在随访分析中,多感觉功能(听觉,视觉,本体感觉)。我们发现,较低的心室功能与左侧MFG的表面压缩和双侧sfg_极和左侧SFG的膨胀有关。右侧SFG_PFC、SFG_pole和左侧SFG的表面压缩与根管功能降低有关。左侧MFG后部内侧表面受压与囊状和心室功能降低有关。我们的研究结果阐明了前庭终末器官功能与衰老中与执行能力、运动计划和自我运动感知相关的额叶和感觉运动皮质区域的局灶形态之间关系的复杂性。对这些途径的更好理解可以帮助开发干预措施,以提高老年人和认知障碍人群的生活质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Reduced Vestibular Function is Associated With Cortical Surface Shape Changes in the Frontal Cortex

Reduced Vestibular Function is Associated With Cortical Surface Shape Changes in the Frontal Cortex

Aging-associated decline in peripheral vestibular function is linked to deficits in behaviors and cognitive abilities that are known to rely on the sensorimotor and frontal cortices, but the precise neural pathways are unknown. To fill this knowledge gap, this cross-sectional study investigates the relationship between age-related variation in vestibular function and surface shape alterations of the frontal and sensorimotor cortices, considering age, intracranial volume, and sex. Data from 117 older adults (aged 60+) from the Baltimore Longitudinal Study of Aging, who underwent end-organ-specific vestibular tests (cVEMP for the saccule, oVEMP for the utricle, and vHIT for the horizontal canal) and T1-weighted MRI scans on the same visit, were analyzed. We examined a subset of 10 frontal and sensorimotor brain structures in the broader, distributed vestibular network: the middle-superior part of the prefrontal cortex (SFG_PFC), frontal pole (SFG_pole), and posterior pars of the superior frontal gyrus (SFG), the dorsal prefrontal cortex and posterior pars of middle frontal gyrus (MFG_DPFC, MFG), the pars opercularis, pars triangularis, and pars orbitalis of the inferior frontal gyrus, as well as the precentral gyrus and postcentral gyrus (PoCG) of the sensorimotor cortex. For each region of interest (ROI), shape descriptors were estimated as local compressions and expansions of the population average ROI surface using Large Deformation Diffeomorphic Metric Mapping (LDDMM) surface registration. Shape descriptors were linearly regressed onto standardized vestibular variables, age, intracranial volume, sex, and in follow-up analyses, multisensory function (hearing, vision, proprioception). We found that lower utricular function was linked with surface compression in the left MFG and expansion in the bilateral SFG_pole and left SFG. Reduced canal function was associated with surface compression in the right SFG_PFC and SFG_pole and left SFG. Both reduced saccular and utricular function correlated with surface compression in the posterior medial part of the left MFG. Our findings illuminate the complexity of the relationship between vestibular end-organ function and the focal morphology in aging in areas of the frontal and sensorimotor cortices relevant to executive ability, motor planning, and self-motion perception. An improved understanding of these pathways could help in developing interventions to enhance the quality of life in aging and populations with cognitive impairment.

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来源期刊
Human Brain Mapping
Human Brain Mapping 医学-核医学
CiteScore
8.30
自引率
6.20%
发文量
401
审稿时长
3-6 weeks
期刊介绍: Human Brain Mapping publishes peer-reviewed basic, clinical, technical, and theoretical research in the interdisciplinary and rapidly expanding field of human brain mapping. The journal features research derived from non-invasive brain imaging modalities used to explore the spatial and temporal organization of the neural systems supporting human behavior. Imaging modalities of interest include positron emission tomography, event-related potentials, electro-and magnetoencephalography, magnetic resonance imaging, and single-photon emission tomography. Brain mapping research in both normal and clinical populations is encouraged. Article formats include Research Articles, Review Articles, Clinical Case Studies, and Technique, as well as Technological Developments, Theoretical Articles, and Synthetic Reviews. Technical advances, such as novel brain imaging methods, analyses for detecting or localizing neural activity, synergistic uses of multiple imaging modalities, and strategies for the design of behavioral paradigms and neural-systems modeling are of particular interest. The journal endorses the propagation of methodological standards and encourages database development in the field of human brain mapping.
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